磨料粒度对磨料流加工的影响规律研究,机械工程硕士论文.docx
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1、磨料粒度对磨料流加工的影响规律研究,机械工程硕士论文摘 要 磨料流加工是利用改性高分子材料在稳定粘弹态下和磨粒混合成为半固体的流体磨料被挤压通过待加工外表到达抛光、去毛刺和倒角等目的,是光整加工技术中的新兴工艺。该工艺对窄缝、微孔、异形孔腔的抛光极具优势。由于磨料流加工技术的众多优点,关于磨料流技术的研究不断增加,但是由于影响磨料流加工效果的因素很多,如磨粒粒度、磨料粘度、加工温度、工件材料硬度等,使得对其加工机理的研究非常困难,获得的进展有限。 本文在应用研究和试验经过中发现磨料的粒度对磨料流加工效果影响很大,在加工经过中使用不同粒度的磨料工件外表质量会呈现出不同的加工极限,而且加工效率也会
2、随磨料粒度发生变化。而以往其他学者对磨料流技术加工机理的研究经过中只建立一种加工模型,忽视磨粒粒度带来的影响,本文通过比照不同粒度的磨粒和工件初始外表形貌的尺寸关系,建立不同粒度磨粒的加工模型;华而不实大粒度磨粒在建立加工模型和分析加工机理时需要将工件外表视为平面,而小粒度磨粒在建立加工模型和分析加工机理时需要将工件外表视为有一定角度的斜面,在这里分析基础上,研究磨料粒度对磨料流技术加工经过中加工极限和加工效率的影响规律,以及设计不同粒度磨料交替使用的实验方案来突破传统实验方案的限制,到达更好的加工效果,为磨料流加工工艺的理论分析和实际生产中磨料粒度的选择提供新的思路。主要工作和结论归纳如下:
3、 1研究影响磨料流技术加工效果的因素,分析流体磨料的流动特性。总结磨粒压痕深度、磨粒粒径对工件外表材料去除方式的影响规律,并分析磨粒对工件进行材料去除的条件。对外表粗糙度 Ra=1.97m 的不锈钢毛细管内壁外表进行测量,得到其微观形貌的实测图,做外表形貌曲线,通过其与不同粒度的磨粒进行基于实际尺寸的接触关系进行比照,将加工模型分为介观尺度下大粒度磨粒加工模型和微观尺度下小粒度磨粒加工模型,并分别对其进行受力分析,华而不实在分析大粒度磨粒的加工机理时将工件外表视为平面,分析小粒度磨粒的加工机理时将工件外表视为一定角度的斜面。 2在对不同粒度磨粒加工机理的理论分析基础上,布置不同粒度磨料的加工实
4、验。对不同粒度磨料到达加工极限的实验情况进行总结,分析不同粒度磨料在加工经过中加工极限产生的原因,同时对不同粒度磨料在加工经过中的加工效率进行比照分析。 得出结论:大粒度磨料在每次加工经过中的材料去除量较大,加工效率高,但是有效加工次数较少,容易到达加工极限,出现加工过量的现象;小粒度磨料在每次加工经过中的材料去除量较小,加工效率较低,但是到达加工极限前的有效加工次数更多,能够获得更好的加工质量。 3为了获得更好的加工效果,在分析不同粒度磨料在磨料流技术加工经过中加工极限和加工效率变化规律的基础上,提出并布置了大粒度磨料和小粒度磨料交替使用的实验方案。经过实验结果的比照,发现新的实验方案能够获
5、得更好的加工质量,同时能够提高加工效率,这也为实际生产中提高磨料流技术的加工效果提供了新的思路。 本文关键词语 : 磨料流加工;磨粒粒度;加工模型;加工机理;加工极限;加工效率。 ABSTRACT Abrasive Flow Machining is a new technology in finishing technology, which usesmodified polymer materials in stable viscoelastic state to mix with abrasive particles andbecomes semi-solid fluid abrasiv
6、e, which is extruded through workpiece surfaces to achievethe purpose of polishing, deburring and chamfering. This process has great advantages forpolishing narrow slit, micro hole and irregular hole cavity. Due to the advantages of AbrasiveFlow Machining technology, the research on abrasive flow te
7、chnology is increasing, but ,there are many factors that affect the effect of abrasive flow machining, such as abrasiveparticle size, abrasive viscosity, processing temperature, workpiece material hardness, so thatthe research on its processing mechanism is very difficult and the progress is limited
8、. In the process of application research and test, it is found that the abrasive particle sizehas a great influence on the Abrasive Flow Machining effect. In the process of processing, thesurface quality of the abrasive workpiece with different particle size will show differentprocessing limit, and
9、the processing efficiency will also change with the abrasive particle size. However, other scholars in the previous research on the processing mechanism of abrasiveflow clamp technology only established a processing model, ignoring the impact of abrasiveparticle size, by comparing the size relations
10、hip between different particle size and the initialsurface topography of the workpiece, it was found that different particle size of the abrasiveparticles to establish different processing models. The workpiece surface needs to be regardedas a plan when establishing the machining model and analyzing
11、 the machining mechanism oflarge-size abrasive particles, and the surface of the workpiece should be regarded as a planewith a certain inclination Angle when establishing the machining model and analyzing themachining mechanism of small particle size, on the basis of this analysis, the influence law
12、 ofabrasive particle size on processing limit and processing efficiency in Abrasive FlowMachining process is studied, and design a experiment scheme of different particle sizeabrasive alternating use to break through the limitation of the traditional experiment scheme,to achieve better processing ef
13、fect, to provide a new idea for the theoretical analysis ofAbrasive Flow Machining processing technology and the choice of abrasive particle size inthe actual production. The main work and conclusions are summarized as follows: 1The factors influencing the machining effect of abrasive flow technolog
14、y arestudied, and the flow characteristics of fluid abrasive are analyzed. The influence rules ofabrasive indentation depth and abrasive particle size on the workpiece surface material removal methods were summarized, and the conditions of abrasive material removal on theworkpiece were analyzed. The
15、 inner surface of stainless steel capillary with a surfaceroughness of Ra=1.97m was measured, and the measured microtopography was obtained,and the machining models were divided into large particle size machining model atmesoscopic scale and small particle size machining model at microscopic scale b
16、y comparingthe contact relationship with the abrasive particles of different sizes, and analyze the force onthem respectively, the workpiece surface is regarded as a plane when analyzing the processingmechanism of large-size abrasive particles, and the workpiece surface is regarded as ainclined plan
17、e with certain Angle when analyzing the processing mechanism of small-sizeabrasive particles. 2On the basis of theoretical analysis of processing mechanism of abrasive particleswith different particle sizes, processing experiments of abrasive materials with differentparticle sizes were arranged. The
18、 experiment of different grain-size abrasives to reach theprocessing limit is summarized and the causes of processing limit for different grain-sizeabrasives in the processing process are analyzed, while the processing efficiency of differentparticle size abrasives in the processing process is compa
19、red and analyzed. It is concluded thatthe material removal amount of large-size abrasive in each processing process is large and theprocessing efficiency is high, but the effective processing times are less, and it is easy to reachthe processing limit, and the phenomenon of excessive processing appe
20、ars. The materialremoval amount of small-size abrasive in each processing process is small, and the processingefficiency is low, but the effective processing times before reaching the processing limit aremore, which can obtain better processing quality. 3In order to obtain better processing effect,
21、based on the analysis of the change ruleof processing limit and processing efficiency of different grain-size abrasives in the process ofAbrasive Flow Machining technology, an experimental scheme of using large grain-sizeabrasives and small grain-size abrasives alternatively was proposed and arrange
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